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A coupled model on fluid flow, heat transfer and solidification in continuous casting mold

机译:连铸结晶器中流体流动,传热和凝固的耦合模型

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摘要

Fluid flow, heat transfer and solidification of steel in the mold are so complex but crucial, determining the surface quality of the continuous casting slab. In the current study, a 2D numerical model was established by Fluent software to simulate the fluid flow, heat transfer and solidification of the steel in the mold. The VOF model and k-ε model were applied to simulate the flow field of the three phases (steel, slag and air), and solidification model was used to simulate the solidification process. The phenomena at the meniscus were also explored through interfacial tension between the liquid steel and slag as well as the mold oscillation. The model included a 20 mm thick mold to clarify the heat transfer and the temperature distribution of the mold. The simulation results show that the liquid steel flows as upper backflow and lower backflow in the mold, and that a small circulation forms at the meniscus. The liquid slag flows away from the corner at the meniscus or infiltrates into the gap between the mold and the shell with the mold oscillating at the negative strip stage or at the positive strip stage. The simulated pitch and the depth of oscillation marks approximate to the theoretical pitch and measured depth on the slab.
机译:结晶器中钢的流体流动,传热和凝固是如此复杂但至关重要,决定了连铸板坯的表面质量。在当前的研究中,通过Fluent软件建立了二维数值模型,以模拟模具中钢的流体流动,传热和凝固。采用VOF模型和k-ε模型模拟了钢铁,矿渣和空气三相的流场,并使用了凝固模型来模拟凝固过程。还通过钢水与炉渣之间的界面张力以及结晶器振动探索了弯月面的现象。该模型包括一个20毫米厚的模具,以阐明模具的传热和温度分布。模拟结果表明,钢水在模具中以上回流和下回流的形式流动,弯月面形成一个小的循环。液态炉渣从弯月面的拐角处流出或渗入到模具和壳体之间的间隙中,其中模具在负剥离阶段或正剥离阶段振动。模拟的节距和振动标记的深度近似于板坯上的理论节距和测量的深度。

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